Hostname: page-component-8448b6f56d-c4f8m Total loading time: 0 Render date: 2024-04-18T23:25:12.997Z Has data issue: false hasContentIssue false

Competition for food in the larvae of two marine molluscs, Crepidula fornicata and Crassostrea gigas

Published online by Cambridge University Press:  29 April 2008

Michel Blanchard
Affiliation:
IFREMER, Dynamiques de l'Environnement Côtier, BP 70, Plouzané 29280, France 
Jan A. Pechenik
Affiliation:
Biology Department, Tufts University, Medford, MA 02155, USA
Emilie Giudicelli
Affiliation:
IFREMER, Station expérimentale, Argenton en Landunvez 29840, France
Jean-Paul Connan
Affiliation:
IFREMER, Station expérimentale, Argenton en Landunvez 29840, France
René Robert
Affiliation:
IFREMER, Station expérimentale, Argenton en Landunvez 29840, France
Get access

Abstract

The degree to which larvae of the invasive American slipper limpet (Crepidula fornicata) and the Japanese oyster (Crassostrea gigas) may compete for food was examined during 2003 in the laboratory. Larval microalgae uptake, growth and mortality were compared for larvae fed each of six species of unicellular algae, ranging in length from 2 to 10 µm. Tested diets included the two flagellates Tetraselmis chui (Prasinophyceae) and Isochrysis affinis galbana (T-ISO, Haptophyceae), one member of the Chlorophyceae (Nannochloris atomus), and three diatom species (Chaetoceros calcitrans forma pumilum, Chaetoceros gracilis, Skeletonema marinoï). We found that the limpet larvae ingested phytoplankton over a wider range of cell sizes and ate at higher rates on each diet than did the oyster larvae. For example, oyster larvae consumed 2216 cells h−1 of N. atomus, while limpet larvae consumed the same phytoplankton cells at approximately twice that rate, 5159 cells h−1, on the same diet. Larvae of both species grew more quickly on a mixture of flagellates than on any of the diatom alone (12 versus 7 µm d−1 for oyster larvae and 41 versus 28 µm d−1 for limpet larvae). Our results suggest that in the Bay of Mount Saint-Michel (France, Western Channel), where larvae of both species co-exist in the summer, intensive grazing by limpet larvae can potentially deplete phytoplankton concentrations to cause competition with oyster larvae, particularly for smaller sized phytoplankton species.

Type
Research Article
Copyright
© EDP Sciences, IFREMER, IRD, 2008

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Aldana-Aranda, D., Patino-Suarez, V., 1998, Overview of diets used in larviculture of three caribean conchs: queen conch Strombus gigas, milk conch Strombus costatus and fighting conch Strombus pugilis. Aquaculture 167, 163178. CrossRef
Blanchard, M., 1995, Origine et état de la population de Crepidula fornicata (Gastropoda, Prosobranchia) sur le littoral français. Haliotis 24, 7586.
Blanchard M., 1997, Spread of the slipper limpet Crepidula fornicata (L., 1758) in Europe. Current state and consequences. Sci. Mar. 61 (supl. 2), 109–118.
Blanchard M., Chardy P., Chaussepied M., Dao J.C., Le Hir P., Jegou A.M., Larsonneur C., Loarer R., Manaud F., 1986, Golfe normano-breton. Bilan des connaissances. Rapp. CNEXO-COB Brest.
Blanchard, M., Ehrhold, A., 1999, Cartographie et évaluation du stock de la crépidule (Crepidula fornicata) en baie du Mont Saint-Michel. Haliotis 28, 1120.
Blanchard M., Clabaut P., Abernot-Le Gac C., 2006, Cartographie et évaluation du stock de crépidules en baie du Mont Saint-Michel, en 2004. Rapp. Ifremer Dyneco/eb/06-01.
Brown, M., Robert, R., 2002, Preparation and assessment of microalgal concentrates as foods for larval and juvenile Pacific oyster (Crassostrea gigas). Aquaculture 207, 289309. CrossRef
Brown, M.R., Mc Causland, M.A., Kowalski, K., 1998, The nutritional value of four Australian microalgal strains fed to Pacific oyster Crassostrea gigas spat. Aquaculture 165, 281-293. CrossRef
Calabrese, A., Rhodes, E.W., 1974, Culture of Mulinia lateralis and Crepidula fornicata embryos and larvae for studies of pollution effects. Thalass. Jugoslav. 10, 89102.
Chaparro, O.R., Soto, A.E., Bertran, C.E., 2002, Velar characteristics and feeding capacity of encapsulated and pelagic larvae of Crepidula fecunda (Gallardo, 1979) (Gastropoda, Calyptraeidae). J. Shellfish Res. 21, 233237.
Chipperfield, P.N.J., 1951, The breeding of Crepidula fornicata (L.) in the river Blackwater (Essex). J. Mar. Biol. Assoc. UK 30, 471. CrossRef
Decottignies, P., Beninger, P., Rince, Y., Riera, P., 2007, Trophic interactions between two introduced suspension-feeders Crepidula fornicata and Crassostrea gigas influenced by seasonal effects and qualitative selection capacity. J. Exp. Mar. Biol. Ecol. 342, 231241. CrossRef
De Montaudouin, X., Audemard, C., Labourg, P.J., 1999, Does the slipper limpet Crepidula fornicata impair oyster growth and zoobenthos diversity? A revisited hypothesis. J. Exp. Mar. Biol. Ecol. 135, 105-124. CrossRef
Douillet, P.A., Langdon, C.J., 1994, Use of probiotic for the culture of larvae of the Pacific oyster Crassostrea gigas (Thunberg). Aquaculture 119, 25-40. CrossRef
Flores-Vergara, C., Cordero-Esquivel, B., Ceron-Ortiz, A.N., Arredondo-Vega, B.O., 2004, Combined effects of temperature and diet on growth and biochemical composition of the Pacific oyster Crassostrea gigas (Thunberg) spat. Aquac. Res. 35, 11311140. CrossRef
Gerdes, D., 1983, The Pacific oyster Crassostrea gigas. 1- Feeding behaviour of larvae and adults. Aquaculture 31, 195219. CrossRef
Hilbish, T.J., Sasada, K., Eyster, L.S., Pechenik, J.A., 1999, Relationship between rates of swimming and growth in veliger larvae: genetic variance and covariance. J. Exp. Mar. Biol. Ecol. 239, 183193. CrossRef
His, E., Robert, R., 1983, Développement des véligères de Crassostrea gigas dans le bassin d'Arcachon. Etudes sur les mortalités larvaires. Rev. Trav. Inst. Pêches Marit. 47, 6388.
His E., Robert R., Chretiennot-Dinet M.J., 1985, Nouvelle méthode pour étudier la nutrition de jeunes larves de Crassostrea gigas en milieu naturel ; premières données expérimentales. C. R. Acad. Sci., Ser. 3, 300, 319–321.
His, E., Robert, R., Maurer, D., 1986, Observations complémentaires sur les causes possibles d'anomalies de la reproduction de Crassostrea gigas (Thunberg) dans le bassin d'Arcachon. Rev. Trav. Inst. Pêches Marit. 48, 4554.
His, E., Robert, R., 1987, Croissance des larves de Crassostrea gigas et de Mytilus galloprovincialis en présence d'algues monocellulaires isolées du tractus digestif des véligères du milieu naturel. Haliotis 16, 383391.
Klinzing, S.E.M., Pechenik, J.A., 2000, Evaluating whether velar lobe size indicates food limitation among larvae of the marine gastropod Crepidula fornicata. J. Exp. Mar. Biol. Ecol. 252, 255279. CrossRef
Laing, I., Millican, P.F., 1986, Relative growth and growth efficiency of Ostrea edulis (L.) spat fed various algal diets. Aquaculture 54, 245-262. CrossRef
Mac Millan N.F., 1938, Early records of Crepidula in English waters. Proc. Malac. Soc. London 23, p. 236.
Mapstone, G.M., 1970, Feeding activities of veligers of Nassarius reticulatus and Crepidula fornicata and the use of artificial foods in maintening cultures of these larvae. Helgol. Wiss. Meer. 20, 565575. CrossRef
Martinez-Fernandez, E., Acosta-Salmon, H., Rangel-Davalos, C., 2004, Ingestion and digestion of ten species of microalgae by winged pearl oyster Pteria sterna (Gould, 1851) larvae. Aquaculture 230, 417-423. CrossRef
Mazurié J., Bouget J.F., 2004, Estimation du stock d'huîtres creuses Crassostrea gigas en élevage, en Baie de Cancale (Octobre 2002). Rapp. Ifremer DRV/RA/LCB/2004.06.
Patino-Suarez, V., Aldana-Aranda, D., Zamora, A.G., 2004, Food ingestion and digestibility of five unicellular algae by 1-day old Strombus gigas larvae. Aquac. Res. 35, 11491152. CrossRef
Pechenik, J.A., 1980, Growth and energy balance during the larval lives of three prosobranch gastropods. J. Exp. Mar. Biol. Ecol. 44, 128. CrossRef
Pechenik, J.A., 1984, The relationship between temperature, growth rate and duration of life for larvae of the gastropod Crepidula fornicata (L.). J. Exp. Mar. Biol. Ecol. 74, 241257. CrossRef
Pechenik, J.A., Lima, G.M., 1984, Relationship between growth, differentiation and length of larval life for individually reared larvae of the marine gastropod Crepidula fornicata. Biol. Bull. 166, 537549. CrossRef
Pechenik, J.A., Jarrett, J., Rooney, J., 2002, Relationships between larval nutritional experience, larval growth rates and feeding rates in the prosobranch gastropod Crepidula fornicata. J. Exp. Mar. Biol. Ecol. 280, 6378. CrossRef
Pilkington, M.C., Fretter, V., 1970, Some factors affecting the growth of prosobranch veligers. Helgol. Wiss. Meer. 20, 576593. CrossRef
Ponis, E., Parisi, G., Robert, R., 2002, Valeur alimentaire de Tetraselmis striata et T. chui pour les larves de Crassostrea gigas. Haliotis 31, 5762.
Ponis, E., Probert, I., Véron, B., Mathieu, M., Robert, R., 2006, New microalgae for the Pacific oyster Crassostrea gigas larvae. Aquaculture 23, 618627. CrossRef
Quiniou, F., Blanchard, M., 1987, Etat de la prolifération de la crépidule (Crepidula fornicata) dans le secteur de Granville, golfe normano-breton. Haliotis 16, 513526.
Rico-Villa, B., Le Coz, J.R., Mingant, C., Robert, R., 2006, Influence of phytoplankton diet mixtures on microalgae consumption, larval development and settlement of the Pacific oyster Crassostrea gigas (Thunberg). Aquaculture 256, 377388. CrossRef
Riera P., 2007, Trophic subsidies of Crassostrea gigas, Mytilus edulis and Crepidula fornicata in the Bay of Mont Saint-Michel (France); a $\delta ^{13}$ C and $\delta ^{15}$ N investigation. Estuar. Coast. Shelf Sci. 72, 33–41.
Riera, P., Stal, L.J., Nieuwenhuize, J., 2002, $\delta ^{13}$ C versus $\delta ^{15}$ N of co-occuring molluscs within a community dominated by Crassostrea gigas and Crepidula fornicata (Oostershelde, The Netherlands). Mar. Ecol. Prog. Ser. 240, 291295. CrossRef
Robert, R., 1998, Nutritional inadequacy of Nannochloris atomus and Stichococcus bacilliaris for the oyster Crassostrea gigas larvae. Haliotis 27, 2934.
Robert, R., His, E., 1988, Observation of the feeding behaviour of Crassostrea gigas larvae in the Bay of Arcachon (France). Aquat. Living Resour. 1, 133139. CrossRef
Robert, R., Trintignac, P., 1996, Microalgues et nutrition larvaire en écloserie de mollusques. Haliotis 26, 113.
Robert, R., Gérard, A., 1999, Bivalve hatchery techniques: current situation for the oyster Crassostrea gigas and the scallop Pecten maximus. Aquat. Living Resour. 12, 121130. CrossRef
Robert R., Chrétiennot-Dinet M.J., Kaas R., Martin-Jézéquel V., Moal J., Le Coz J.R., Nicolas J.L., Bernard E., Connan J.P., Le Déan L., Le Gourrierec G., Leroy B., Quéré C., 2004, Amélioration des productions phytoplanctoniques en écloserie de mollusques; caractérisation des microalgues-fourrage. Rapp. Ifremer DRV/RST/RA/LPI/ 2004.05.
Ruiz, G.M., Carlton, J.T., Grosholz, E., Hines, A.H., 1997, Global invasions of marine and estuarine habitats by non-indigenous species: mecanisms, extent and consequences. Am. Zool. 37, 621632. CrossRef
Sommer, F., Stibor, H., Sommer, U., Velimirov, B., 2000, Grazing by mesozooplankton from Kiel Bight, Baltic Sea, on different sized algal and natural seston size fractions. Mar. Ecol. Prog. Ser. 199, 4353. CrossRef
Strathmann, R.R., Fenaux, L., Sewell, A.T., Strathmann, M.F., 1993, Abundance of food affects relative size of larval and postlarval structures of a molluscan veliger. Biol. Bull. 185, 232239. CrossRef
Thieltges, D.W., 2005, Impact of an invader epizootic American slipper limpet Crepidula fornicata reduces survival and growth in European mussel. Mar. Ecol. Prog. Ser. 286, 1319. CrossRef
Thieltges D.W., Strasser M., Van Beusekom J.E.E., Reise K., 2004, Too cold to prosper; winter mortality prevents population increase of the introduced American slipper limpet Crepidula fornicata in Northern Europe. J. Exp. Mar. Biol. Ecol. 311, 375–391.
Thompson, P.A., Guo, M., Harrison, P.J., 1993, The influence of irradiance on the biochemical composition of three phytoplankton species and their nutritional value for larvae of the Pacific oyster (Crassostrea gigas). Mar. Biol. 117, 259268. CrossRef
Utting S.D., Spencer B., 1991, The hatchery culture of bivalve molluscs larvae and juvenile, MAFF Laboratory Leaflet, 68, 31 p.
Volkman J.K., Brown M.R., 2006, Nutritional value of microalgae and applications. In: Subba Rao, D.V. (Ed.), Algal Cultures, Analogues of Bloom and Applications. Science Publishers, Enfield NH, pp. 407–457.
Walne, P.R., 1963, Observations on the food value of seven species of algae to the larvae of Ostrea edulis, I. Feeding experiments. J. Mar. Biol. Assoc. UK 43, 767784. CrossRef
Waldock, M.J., Nascimento, I.A., 1979, The triacylglycerol composition of Crassostrea gigas larvae fed on different algal diets. Mar. Biol. Lett. 1, 7786.
Whyte, J.N.C., 1987, Biochemical composition and energy content of six species of phytoplankton used in mariculture of bivalves. Aquaculture 60, 231241. CrossRef